422 lines
11 KiB
Plaintext
422 lines
11 KiB
Plaintext
// Copyright 2009 The Go Authors. All rights reserved.
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// Use of this source code is governed by a BSD-style
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// license that can be found in the LICENSE file.
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package misspell_test
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import (
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"bytes"
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"fmt"
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"strings"
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"testing"
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. "github.com/client9/misspell"
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)
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var htmlEscaper = NewStringReplacer(
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"&", "&",
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"<", "<",
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">", ">",
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`"`, """,
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"'", "'",
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)
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var htmlUnescaper = NewStringReplacer(
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"&", "&",
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"<", "<",
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">", ">",
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""", `"`,
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"'", "'",
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)
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// The http package's old HTML escaping function.
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func oldHTMLEscape(s string) string {
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s = strings.Replace(s, "&", "&", -1)
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s = strings.Replace(s, "<", "<", -1)
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s = strings.Replace(s, ">", ">", -1)
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s = strings.Replace(s, `"`, """, -1)
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s = strings.Replace(s, "'", "'", -1)
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return s
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}
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var capitalLetters = NewStringReplacer("a", "A", "b", "B")
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// TestReplacer tests the replacer implementations.
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func TestReplacer(t *testing.T) {
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type testCase struct {
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r *StringReplacer
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in, out string
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}
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var testCases []testCase
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// str converts 0xff to "\xff". This isn't just string(b) since that converts to UTF-8.
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str := func(b byte) string {
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return string([]byte{b})
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}
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var s []string
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// inc maps "\x00"->"\x01", ..., "a"->"b", "b"->"c", ..., "\xff"->"\x00".
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for i := 0; i < 256; i++ {
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s = append(s, str(byte(i)), str(byte(i+1)))
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}
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inc := NewStringReplacer(s...)
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// Test cases with 1-byte old strings, 1-byte new strings.
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testCases = append(testCases,
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testCase{capitalLetters, "brad", "BrAd"},
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testCase{capitalLetters, strings.Repeat("a", (32<<10)+123), strings.Repeat("A", (32<<10)+123)},
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testCase{capitalLetters, "", ""},
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testCase{inc, "brad", "csbe"},
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testCase{inc, "\x00\xff", "\x01\x00"},
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testCase{inc, "", ""},
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testCase{NewStringReplacer("a", "1", "a", "2"), "brad", "br1d"},
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)
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// repeat maps "a"->"a", "b"->"bb", "c"->"ccc", ...
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s = nil
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for i := 0; i < 256; i++ {
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n := i + 1 - 'a'
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if n < 1 {
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n = 1
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}
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s = append(s, str(byte(i)), strings.Repeat(str(byte(i)), n))
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}
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repeat := NewStringReplacer(s...)
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// Test cases with 1-byte old strings, variable length new strings.
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testCases = append(testCases,
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testCase{htmlEscaper, "No changes", "No changes"},
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testCase{htmlEscaper, "I <3 escaping & stuff", "I <3 escaping & stuff"},
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testCase{htmlEscaper, "&&&", "&&&"},
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testCase{htmlEscaper, "", ""},
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testCase{repeat, "brad", "bbrrrrrrrrrrrrrrrrrradddd"},
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testCase{repeat, "abba", "abbbba"},
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testCase{repeat, "", ""},
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testCase{NewStringReplacer("a", "11", "a", "22"), "brad", "br11d"},
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)
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// The remaining test cases have variable length old strings.
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testCases = append(testCases,
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testCase{htmlUnescaper, "&amp;", "&"},
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testCase{htmlUnescaper, "<b>HTML's neat</b>", "<b>HTML's neat</b>"},
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testCase{htmlUnescaper, "", ""},
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testCase{NewStringReplacer("a", "1", "a", "2", "xxx", "xxx"), "brad", "br1d"},
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testCase{NewStringReplacer("a", "1", "aa", "2", "aaa", "3"), "aaaa", "1111"},
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testCase{NewStringReplacer("aaa", "3", "aa", "2", "a", "1"), "aaaa", "31"},
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)
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// gen1 has multiple old strings of variable length. There is no
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// overall non-empty common prefix, but some pairwise common prefixes.
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gen1 := NewStringReplacer(
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"aaa", "3[aaa]",
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"aa", "2[aa]",
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"a", "1[a]",
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"i", "i",
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"longerst", "most long",
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"longer", "medium",
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"long", "short",
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"xx", "xx",
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"x", "X",
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"X", "Y",
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"Y", "Z",
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)
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testCases = append(testCases,
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testCase{gen1, "fooaaabar", "foo3[aaa]b1[a]r"},
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testCase{gen1, "long, longerst, longer", "short, most long, medium"},
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testCase{gen1, "xxxxx", "xxxxX"},
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testCase{gen1, "XiX", "YiY"},
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testCase{gen1, "", ""},
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)
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// gen2 has multiple old strings with no pairwise common prefix.
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gen2 := NewStringReplacer(
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"roses", "red",
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"violets", "blue",
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"sugar", "sweet",
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)
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testCases = append(testCases,
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testCase{gen2, "roses are red, violets are blue...", "red are red, blue are blue..."},
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testCase{gen2, "", ""},
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)
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// gen3 has multiple old strings with an overall common prefix.
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gen3 := NewStringReplacer(
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"abracadabra", "poof",
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"abracadabrakazam", "splat",
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"abraham", "lincoln",
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"abrasion", "scrape",
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"abraham", "isaac",
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)
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testCases = append(testCases,
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testCase{gen3, "abracadabrakazam abraham", "poofkazam lincoln"},
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testCase{gen3, "abrasion abracad", "scrape abracad"},
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testCase{gen3, "abba abram abrasive", "abba abram abrasive"},
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testCase{gen3, "", ""},
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)
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// foo{1,2,3,4} have multiple old strings with an overall common prefix
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// and 1- or 2- byte extensions from the common prefix.
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foo1 := NewStringReplacer(
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"foo1", "A",
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"foo2", "B",
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"foo3", "C",
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)
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foo2 := NewStringReplacer(
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"foo1", "A",
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"foo2", "B",
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"foo31", "C",
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"foo32", "D",
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)
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foo3 := NewStringReplacer(
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"foo11", "A",
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"foo12", "B",
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"foo31", "C",
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"foo32", "D",
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)
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foo4 := NewStringReplacer(
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"foo12", "B",
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"foo32", "D",
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)
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testCases = append(testCases,
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testCase{foo1, "fofoofoo12foo32oo", "fofooA2C2oo"},
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testCase{foo1, "", ""},
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testCase{foo2, "fofoofoo12foo32oo", "fofooA2Doo"},
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testCase{foo2, "", ""},
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testCase{foo3, "fofoofoo12foo32oo", "fofooBDoo"},
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testCase{foo3, "", ""},
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testCase{foo4, "fofoofoo12foo32oo", "fofooBDoo"},
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testCase{foo4, "", ""},
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)
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// genAll maps "\x00\x01\x02...\xfe\xff" to "[all]", amongst other things.
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allBytes := make([]byte, 256)
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for i := range allBytes {
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allBytes[i] = byte(i)
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}
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allString := string(allBytes)
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genAll := NewStringReplacer(
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allString, "[all]",
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"\xff", "[ff]",
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"\x00", "[00]",
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)
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testCases = append(testCases,
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testCase{genAll, allString, "[all]"},
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testCase{genAll, "a\xff" + allString + "\x00", "a[ff][all][00]"},
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testCase{genAll, "", ""},
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)
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// Test cases with empty old strings.
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blankToX1 := NewStringReplacer("", "X")
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blankToX2 := NewStringReplacer("", "X", "", "")
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blankHighPriority := NewStringReplacer("", "X", "o", "O")
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blankLowPriority := NewStringReplacer("o", "O", "", "X")
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blankNoOp1 := NewStringReplacer("", "")
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blankNoOp2 := NewStringReplacer("", "", "", "A")
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blankFoo := NewStringReplacer("", "X", "foobar", "R", "foobaz", "Z")
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testCases = append(testCases,
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testCase{blankToX1, "foo", "XfXoXoX"},
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testCase{blankToX1, "", "X"},
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testCase{blankToX2, "foo", "XfXoXoX"},
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testCase{blankToX2, "", "X"},
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testCase{blankHighPriority, "oo", "XOXOX"},
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testCase{blankHighPriority, "ii", "XiXiX"},
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testCase{blankHighPriority, "oiio", "XOXiXiXOX"},
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testCase{blankHighPriority, "iooi", "XiXOXOXiX"},
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testCase{blankHighPriority, "", "X"},
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testCase{blankLowPriority, "oo", "OOX"},
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testCase{blankLowPriority, "ii", "XiXiX"},
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testCase{blankLowPriority, "oiio", "OXiXiOX"},
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testCase{blankLowPriority, "iooi", "XiOOXiX"},
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testCase{blankLowPriority, "", "X"},
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testCase{blankNoOp1, "foo", "foo"},
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testCase{blankNoOp1, "", ""},
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testCase{blankNoOp2, "foo", "foo"},
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testCase{blankNoOp2, "", ""},
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testCase{blankFoo, "foobarfoobaz", "XRXZX"},
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testCase{blankFoo, "foobar-foobaz", "XRX-XZX"},
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testCase{blankFoo, "", "X"},
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)
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// single string replacer
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abcMatcher := NewStringReplacer("abc", "[match]")
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testCases = append(testCases,
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testCase{abcMatcher, "", ""},
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testCase{abcMatcher, "ab", "ab"},
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testCase{abcMatcher, "abc", "[match]"},
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testCase{abcMatcher, "abcd", "[match]d"},
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testCase{abcMatcher, "cabcabcdabca", "c[match][match]d[match]a"},
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)
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// Issue 6659 cases (more single string replacer)
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noHello := NewStringReplacer("Hello", "")
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testCases = append(testCases,
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testCase{noHello, "Hello", ""},
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testCase{noHello, "Hellox", "x"},
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testCase{noHello, "xHello", "x"},
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testCase{noHello, "xHellox", "xx"},
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)
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// No-arg test cases.
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nop := NewStringReplacer()
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testCases = append(testCases,
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testCase{nop, "abc", "abc"},
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testCase{nop, "", ""},
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)
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// Run the test cases.
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for i, tc := range testCases {
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if s := tc.r.Replace(tc.in); s != tc.out {
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t.Errorf("%d. strings.Replace(%q) = %q, want %q", i, tc.in, s, tc.out)
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}
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var buf bytes.Buffer
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n, err := tc.r.WriteString(&buf, tc.in)
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if err != nil {
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t.Errorf("%d. WriteString: %v", i, err)
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continue
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}
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got := buf.String()
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if got != tc.out {
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t.Errorf("%d. WriteString(%q) wrote %q, want %q", i, tc.in, got, tc.out)
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continue
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}
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if n != len(tc.out) {
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t.Errorf("%d. WriteString(%q) wrote correct string but reported %d bytes; want %d (%q)",
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i, tc.in, n, len(tc.out), tc.out)
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}
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}
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}
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type errWriter struct{}
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func (errWriter) Write(p []byte) (n int, err error) {
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return 0, fmt.Errorf("unwritable")
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}
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func BenchmarkGenericNoMatch(b *testing.B) {
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str := strings.Repeat("A", 100) + strings.Repeat("B", 100)
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generic := NewStringReplacer("a", "A", "b", "B", "12", "123") // varying lengths forces generic
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for i := 0; i < b.N; i++ {
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generic.Replace(str)
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}
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}
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func BenchmarkGenericMatch1(b *testing.B) {
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str := strings.Repeat("a", 100) + strings.Repeat("b", 100)
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generic := NewStringReplacer("a", "A", "b", "B", "12", "123")
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for i := 0; i < b.N; i++ {
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generic.Replace(str)
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}
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}
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func BenchmarkGenericMatch2(b *testing.B) {
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str := strings.Repeat("It's <b>HTML</b>!", 100)
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for i := 0; i < b.N; i++ {
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htmlUnescaper.Replace(str)
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}
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}
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func benchmarkSingleString(b *testing.B, pattern, text string) {
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r := NewStringReplacer(pattern, "[match]")
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b.SetBytes(int64(len(text)))
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b.ResetTimer()
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for i := 0; i < b.N; i++ {
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r.Replace(text)
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}
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}
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func BenchmarkSingleMaxSkipping(b *testing.B) {
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benchmarkSingleString(b, strings.Repeat("b", 25), strings.Repeat("a", 10000))
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}
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func BenchmarkSingleLongSuffixFail(b *testing.B) {
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benchmarkSingleString(b, "b"+strings.Repeat("a", 500), strings.Repeat("a", 1002))
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}
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func BenchmarkSingleMatch(b *testing.B) {
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benchmarkSingleString(b, "abcdef", strings.Repeat("abcdefghijklmno", 1000))
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}
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func BenchmarkByteByteNoMatch(b *testing.B) {
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str := strings.Repeat("A", 100) + strings.Repeat("B", 100)
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for i := 0; i < b.N; i++ {
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capitalLetters.Replace(str)
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}
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}
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func BenchmarkByteByteMatch(b *testing.B) {
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str := strings.Repeat("a", 100) + strings.Repeat("b", 100)
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for i := 0; i < b.N; i++ {
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capitalLetters.Replace(str)
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}
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}
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func BenchmarkByteStringMatch(b *testing.B) {
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str := "<" + strings.Repeat("a", 99) + strings.Repeat("b", 99) + ">"
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for i := 0; i < b.N; i++ {
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htmlEscaper.Replace(str)
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}
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}
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func BenchmarkHTMLEscapeNew(b *testing.B) {
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str := "I <3 to escape HTML & other text too."
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for i := 0; i < b.N; i++ {
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htmlEscaper.Replace(str)
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}
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}
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func BenchmarkHTMLEscapeOld(b *testing.B) {
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str := "I <3 to escape HTML & other text too."
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for i := 0; i < b.N; i++ {
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oldHTMLEscape(str)
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}
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}
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func BenchmarkByteStringReplacerWriteString(b *testing.B) {
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str := strings.Repeat("I <3 to escape HTML & other text too.", 100)
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buf := new(bytes.Buffer)
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for i := 0; i < b.N; i++ {
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htmlEscaper.WriteString(buf, str)
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buf.Reset()
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}
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}
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func BenchmarkByteReplacerWriteString(b *testing.B) {
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str := strings.Repeat("abcdefghijklmnopqrstuvwxyz", 100)
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buf := new(bytes.Buffer)
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for i := 0; i < b.N; i++ {
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capitalLetters.WriteString(buf, str)
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buf.Reset()
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}
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}
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// BenchmarkByteByteReplaces compares byteByteImpl against multiple Replaces.
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func BenchmarkByteByteReplaces(b *testing.B) {
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str := strings.Repeat("a", 100) + strings.Repeat("b", 100)
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for i := 0; i < b.N; i++ {
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strings.Replace(strings.Replace(str, "a", "A", -1), "b", "B", -1)
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}
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}
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